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用于制备抗磷酸酶SH2结构域抑制剂的不可水解磷酸酪氨酸模拟物。

Nonhydrolyzable phosphotyrosyl mimetics for the preparation of phosphatase-resistant SH2 domain inhibitors.

作者信息

Burke T R, Smyth M S, Otaka A, Nomizu M, Roller P P, Wolf G, Case R, Shoelson S E

机构信息

Laboratory of Medicinal Chemistry, NCI, National Institutes of Health, Bethesda, Maryland 20892.

出版信息

Biochemistry. 1994 May 31;33(21):6490-4. doi: 10.1021/bi00187a015.

Abstract

Src homology 2 (SH2) domains participate in protein tyrosine kinase (PTK)-mediated cellular signal transduction through their ability to bind with high affinity to phosphotyrosyl (pTyr)-bearing protein sequences. Although peptides containing pTyr competitively inhibit the binding between phosphoproteins and cognate SH2 proteins in a sequence-specific manner, such peptides are rapidly dephosphorylated by cellular phosphatases. We now describe our efforts to develop SH2 inhibitory peptides containing phosphatase-resistant pTyr surrogates. The parent compound, (phosphonomethyl)phenylalanine (Pmp), is a phosphonate-based mimetic of pTyr in which the phosphate ester oxygen (> COPO3H2) has been replaced by a methylene unit (> CCX2PO3H2, X2 = H2). Pmp analogues bearing fluorine (X2 = H, F or X2 = F2) or hydroxyl (X2 = H, OH) substituents on the phosphonate alpha-methylene carbon have been prepared and incorporated into peptides for use as SH2 domain inhibitors. In an assay using the C-terminal SH2 domain of phosphatidylinositol (PI) 3-kinase, peptides having a GXVPML sequence [where X = pTyr, Pmp, hydroxy-Pmp (HPmp), monofluoro-Pmp (FPmp), and difluoro-Pmp (F2Pmp)] exhibited binding potency in the order HPmp < Pmp < FPmp < F2Pmp = pTyr. Distinct peptide sequences which bind selectively with Src and Grb2 SH2 domains were also prepared with pTyr and F2Pmp. The F2Pmp peptides bound with high (0.2- to 5-fold) relative affinity, compared to analogous pTyr peptides. We conclude that peptides containing F2Pmp bind to SH2 domains with high affinity and specificity and, being resistant to cellular phosphatases, should provide a generally useful tool for disrupting SH2 domain-mediated signaling pathways in intact cells.

摘要

Src同源2(SH2)结构域通过其与含磷酸酪氨酸(pTyr)的蛋白质序列高亲和力结合的能力,参与蛋白质酪氨酸激酶(PTK)介导的细胞信号转导。尽管含pTyr的肽以序列特异性方式竞争性抑制磷蛋白与同源SH2蛋白之间的结合,但此类肽会被细胞磷酸酶迅速去磷酸化。我们现在描述我们开发含磷酸酶抗性pTyr替代物的SH2抑制肽的努力。母体化合物(膦酰甲基)苯丙氨酸(Pmp)是一种基于膦酸酯的pTyr模拟物,其中磷酸酯氧(>COPO3H2)已被亚甲基单元(>CCX2PO3H2,X2 = H2)取代。已制备了在膦酸酯α-亚甲基碳上带有氟(X2 = H,F或X2 = F2)或羟基(X2 = H,OH)取代基的Pmp类似物,并将其掺入肽中用作SH2结构域抑制剂。在使用磷脂酰肌醇(PI)3激酶C末端SH2结构域的测定中,具有GXVPML序列[其中X = pTyr、Pmp、羟基-Pmp(HPmp)、单氟-Pmp(FPmp)和二氟-Pmp(F2Pmp)]的肽表现出的结合效力顺序为HPmp < Pmp < FPmp < F2Pmp = pTyr。还制备了分别与Src和Grb2 SH2结构域选择性结合的不同肽序列,其中含有pTyr和F2Pmp。与类似的pTyr肽相比,F2Pmp肽以高(0.2至5倍)相对亲和力结合。我们得出结论,含F2Pmp的肽以高亲和力和特异性结合SH2结构域,并且由于对细胞磷酸酶具有抗性,应该为破坏完整细胞中SH2结构域介导的信号通路提供一种普遍有用的工具。

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